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1.
本文报道了华北克拉通南缘鲁山县下汤地区早前寒武纪变质基底岩石的地球化学、锆石定年和Hf同位素组成。上太华岩群两个变质沉积岩样品的变质锆石年龄为1.91~1.93 Ga,由于变质作用强烈改造,碎屑锆石真正的形成年龄难以确定。碎屑锆石ε_(Hf)(t)和t_(DMW(CC))(Hf)分别为-0.26~10.41和2244~2958 Ma。一个变质辉长闪长岩样品的捕获锆石年龄为2.32 Ga,变质锆石年龄为1.93 Ga。捕获锆石的ε_(Hf)(t)和t_(DM2(CC))(Hf)分别为-1.79~2.22和2695~2940 Ma。两个片麻状奥长花岗岩样品的岩浆锆石和变质锆石年龄分别为1.93 Ga和1.92 Ga,岩浆锆石的ε_(Hf)(t)和t_(DM2(CC))(Hf)分别为-3.30~1.30和2481~2764 Ma。一个片麻状正长花岗岩样品的岩浆锆石和变质锆石年龄分别为1.93 Ga和1.92 Ga,岩浆锆石的ε_(Hf)(t)和t_(DM2(CC))(Hf)分别为-3.67~2.40和2415~2788 Ma。结合地球化学和前人研究结果,可得出如下结论:(1)上太华岩群形成时代形成于古元古代早期;(2)进一步支持了该区存在约2.3 Ga岩浆作用的认识;(3)发现广泛分布的1.91~1.93 Ga壳源奥长花岗岩和正长花岗岩;(4)确定1.91~1.94 Ga变质作用在该区广泛发育。  相似文献   

2.
海南岛北部儋州地区大面积出露三叠纪花岗岩体,其岩石成因与构造背景对揭示华南中生代构造演化具有重要意义。LA-ICP-MS锆石U-Pb定年结果显示儋州大王岭花岗岩体的侵位时间为243±1.8 Ma,表明该岩体形成于中三叠世早期。儋州大王岭花岗岩相对富铝(Al2O3=15.08%~15.49%)、钾(K2O=4.90%~5.63%)和稀土元素(∑REE=331~369μg/g),属钾玄质钙碱性系列;A/CNK值为0.93~0.95,属于准铝质。岩体相对富集轻稀土元素,轻重稀土元素分异明显(LaN/YbN=29.2~43.1),显示明显的Eu负异常(δEu=0.18~0.21)。样品具有相对高的Ga/Al值,结合(Nb+Zr+Ce+Y)含量指示其属于A型花岗岩。较低的锆石Hf同位素(εHf(t)=-13.9~-10.0)及较老的Hf同位素二阶段模式年龄(tDM2=1.54~1.73 Ga),反映其可能源自海南岛早–中元古代变质基底(如抱板群...  相似文献   

3.
为探讨赣东北景德镇地区双桥山群的沉积时代与物质来源,对该区双桥山群安乐林组地层中发育的一套变火山碎屑凝灰岩夹层进行了年代学、地球化学及锆石Lu-Hf同位素研究。结果显示,该套火山碎屑凝灰岩的岩性主要为英安岩、安山岩,凝灰岩的LA-ICP-MS锆石U-Pb年龄为(809±2)Ma,表明该套岩石形成于新元古代。凝灰岩锆石的Hf同位素组成变化范围较广,其中二阶模式年龄为1426~2313 Ma,主要集中于1.7~2.3 Ga之间,其ε_(Hf)(t)均为负值-2.6~-16.5,t_(DM2)模式年龄远大于U-Pb年龄,表明该组岩石的岩浆来源于元古代地壳物质的再循环。  相似文献   

4.
本文报道了华北克拉通南缘豫西鲁山下汤地区古元古代片麻状花岗岩和黑云角闪斜长片麻岩的全岩地球化学和锆石SHRIMP U-Pb年龄和Hf同位素组成。岩石呈包体形式存在于中元古代花岗岩中。片麻状花岗岩具深熔特征,岩浆锆石年龄为2.30Ga;岩石高SiO2和K2O,低ΣFeO、MgO和CaO,具稀土总量较高(ΣREE=165.8×10-6)、轻重稀土分离较强[(La/Yb)n=37.8]及弱负铕异常(Eu/Eu*=0.76)的稀土模式;εNd(t)(t=2.30Ga)=-0.75;tDM(Nd)=2.66Ga。黑云角闪斜长片麻岩变质原岩为辉长闪长岩,捕获锆石年龄为2.25Ga;岩石低SiO2和MgO,高Al2O3和P2O5,具稀土总量高(ΣREE=373.4×10-6)、轻重稀土分离不强[(La/Yb)n=9.4]及较强负铕异常(Eu/Eu*=0.44)的稀土模式;εNd(t)(t=2.25Ga)=-1.21;tDM(Nd)=2.75Ga。片麻状花岗岩和黑云角闪斜长片麻岩都记录了1.94Ga变质锆石年龄。片麻状花岗岩的岩浆锆石组成域的εHf(t)(t=2.30Ga)=-6.71~0.38,tDM1(Hf)=2627~2910Ma,tDM2(CC)(Hf)=2823~3255Ma。黑云角闪斜长片麻岩的捕获锆石组成域的εHf(t)(t=2.25Ga)=-19.58~-1.73,tDM1(Hf)=2664~3360Ma,tDM2(CC)(Hf)=2968~4011Ma。结合前人资料,得出如下结论:华北克拉通南缘豫陕晋结合部地区存在一规模较大的约2.3Ga地质体分布区;华北克拉通南缘很可能存在规模巨大的>2.7Ga基底;中部造山带与孔兹岩带具有类似的古元古代晚期构造热事件演化历史。  相似文献   

5.
本文报道了华北克拉通中部焦作地区太古宙变质岩的锆石U-Pb定年和Hf同位素分析结果。二云钾长片麻岩的碎屑锆石和变质锆石年龄分别为3.3~3.4 Ga和2.47±0.02 Ga,碎屑锆石的ε_(Hf)(3.40Ga)和t_(DM2(CC))。值分别为-2.4~+13.9和2.89~3.84 Ga,变质锆石的ε_(Hf)(2.47Ga)和t_(DM2(CC))值分别为-18.8~-6.4和3.38~4.13 Ma。黑云角闪片麻岩中只存在变质锆石,年龄为2.49±0.01 Ga,变质锆石的ε_(Hf)(2.49Ga)和t_(DM2(CC))值分别为~15.0~-3.8和3.23~3.91 Ga。结合地球化学和前人研究成果,可得出如下结论:①碎屑物质来自以3.4 Ga花岗质岩浆岩为主的物源区,物源区岩石具有相当的规模,是壳幔混合作用的产物,形成过程中有更古老(始太古代)陆壳物质参与;②岩石遭受约2.5 Ga强烈构造热事件作用,深熔作用导致花岗质脉体形成;③可把变质碎屑沉积岩形成(沉积)时代限制在2.5~3.3 Ga之间;④变质锆石的Hf同位索组成与核部锆石的十分类似,变质增生边主要形成于核部锆石的溶解—再沉淀作用。  相似文献   

6.
豫西地区秦岭造山带武当群Nd-Hf同位素组成及其物源特征   总被引:1,自引:0,他引:1  
武当群变质沉积-火山岩组合是南秦岭地体中重要的基底岩石,其形成时代和地球化学特征可以为理解秦岭造山带的构造演化提供重要的证据.本文报道豫西地区武当群上部沉积岩和下部中-酸性火山岩Sm-Nd同位素和锆石Lu-Hf同位素组成,探讨火山岩成因和沉积岩物源的同位素特征.上部沉积岩的碎屑锆石初始ε_(Hf)值变化在-30~+10之间,对应的模式年龄值t_(DM2)在1.0Ga至3.2Ga之间,初始ε_(Nd)值在-4.0至-6.0之间.沉积物源表现为主要与扬子陆块有亲缘关系的地壳物质和近源的下部火山岩混合的特征.火山岩的锆石初始εHf值变化在-35~+15之间,对应的模式年龄值t_(DM2)在0.8Ga至3.5Ga之间,集中于1.5~1.8Ga和2.2~2.4Ga两个峰值.2个变质石英角斑岩样品初始ε_(Nd)值分别为-9.2和-10.7,而报道的湖北武当群的玄武-安山质熔岩的初始ε_(Nd)值以正值为主.因此,武当群不同类型的火山岩可能存在着成因差异.具有低初始ε_(Nd)值和ε_(Hf)值特征的火山岩可能由地壳物质的重熔而形成的;有些火山岩具有初始ε_(Hf)值变化范围较大(-35~+15)或正初始ε_(Nd)值的特点,可能是壳、幔物质混合成因,有显著的幔源或新生地壳物质的贡献.武当群Nd-Hf同位素组成和碎屑锆石年龄分布特征表明,与扬子陆块有亲缘关系的南秦岭地体在元古代期间可能经历多期地壳增生和再造作用.  相似文献   

7.
沂水地区位于鲁西花岗绿岩区东部沂水-汤头断裂带内。本文对区内九层岭与大山两地的混合岩样品进行了锆石U-Pb年龄与Hf同位素分析研究。结果显示九层岭混合岩有(2693±11)Ma和(2558±9)Ma两个年龄记录,分别代表早期熔融年龄和混合岩化年龄;锆石Hf同位素组成较为均一,ε_(Hf)(t)=+2.42~+5.46并且沿~(176)Lu/~(177)Hf=0.015平均地壳演化线分布,相应二阶段锆石Hf模式年龄都在2.80~2.93 Ga之间。而两个来自大山的样品则给出了(2475±14)Ma和(2474±14)Ma一致的结果,代表了混合岩化年龄;Hf同位素组成变化较大,ε_(Hf)(2475 Ma)=–1.48~+8.0,ε_(Hf)(2474 Ma)=–2.76~+6.43,二阶段锆石Hf模式年龄整体在2.48~3.15 Ga之间。结合区域演化背景,我们认为以上特征指示沂水地区很可能残存2.8 Ga的古老基底于地壳深部,经历并且记录了2.8~2.9 Ga新生地壳形成,及新太古代两期重要的2.7 Ga和2.5 Ga的岩浆作用事件。同时该地区存在多个时期形成的地壳物质(2.48~2.99 Ga)复合的源区,在板片俯冲角度变大(~2.54 Ga)后构造热作用影响加强使得源区在2.48 Ga重熔并有少量古老地壳物质(3.15 Ga)的贡献。  相似文献   

8.
《地质论评》2012,58(3)
本文报道了华北克拉通南缘豫西鲁山下汤地区古元古代片麻状花岗岩和黑云角闪斜长片麻岩的全岩地球化学和锆石SHRIMP U-Pb年龄和Hf同位素组成.岩石呈包体形式存在于中元古代花岗岩中.片麻状花岗岩具深熔特征,岩浆锆石年龄为2.30 Ga;岩石高SiO2和K2O,低∑FeO、MgO和CaO,具稀土总量较高(∑REE=165.8×10-6)、轻重稀土分离较强[(La/Yb)n=37.8]及弱负铕异常(Eu/Eu(*)=0.76)的稀土模式;εNd(t)(t=2.30 Ga)=-0.75; tDM(Nd) =2.66 Ga.黑云角闪斜长片麻岩变质原岩为辉长闪长岩,捕获锆石年龄为2.25 Ga;岩石低SiO2 和MgO,高Al2O3和P2O5,具稀土总量高(∑REE=373.4×10-6)、轻重稀土分离不强[ (La/Yb)n=9.4]及较强负铕异常( Eu/Eu*=0.44)的稀土模式;εNd(t)(t=2.25 Ga)=-1.21;tDM(Nd) =2.75 Ga.片麻状花岗岩和黑云角闪斜长片麻岩都记录了1.94 Ga变质锆石年龄.片麻状花岗岩的岩浆锆石组成域的εHf(t)(t=2.30 Ga)=-6.71~0.38,tDMI(Hf) =2627 ~2910 Ma,tDM2(CC)(Hf)=2823 ~ 3255 Ma.黑云角闪斜长片麻岩的捕获锆石组成域的εHf(t)(t=2.25 Ga)=-19.58~ -1.73,tDM1 (Hf) =2664~3360 Ma,tDM2(CC)(Hf)=2968 ~4011 Ma.结合前人资料,得出如下结论:华北克拉通南缘豫陕晋结合部地区存在—规模较大的约2.3 Ga地质体分布区;华北克拉通南缘很可能存在规模巨大的>2.7 Ga基底;中部造山带与孔兹岩带具有类似的古元古代晚期构造热事件演化历史.  相似文献   

9.
抱板杂岩(抱板群)是海南岛目前已发现的最古老前寒武纪结晶基底,记录了多期构造热事件,是研究海南岛大地构造属性的重要窗口。本文通过对海南岛冲卒岭地区抱板杂岩变质沉积岩、变质基性岩和伟晶岩脉的锆石和独居石LA-ICP-MS U-Pb年代学研究,来确定抱板杂岩所经历的多期构造热事件及其所代表的构造意义。研究结果显示,抱板杂岩主要由中元古代变质沉积岩、花岗质片麻岩和变质基性岩组成,经历了中元古代晚期-新元古代早期(1.3~0.9Ga)、早古生代(470~440Ma)、三叠纪(~230Ma)等多期构造热事件的改造。中元古代晚期-新元古代早期构造热事件与罗迪尼亚超大陆的汇聚有关;早古生代构造热事件与东冈瓦纳古陆北缘的增生造山作用有关;三叠纪构造热事件是印支陆块与华南陆块碰撞拼合的远程响应。综合上述研究成果和区域对比分析,认为海南岛与印支陆块具有相似的前寒武纪结晶基底和多期构造热事件的记录,表明二者具有明显的亲缘关系。  相似文献   

10.
在详细的野外地质调查基础上,本文通过对湖南省桂阳县大义山南体(太坪山单元)黑云母二长花岗岩的岩石化学、锆石U-Pb定年和全岩Sm-Nd同位素以及锆石原位Hf同位素的综合研究,参照前人研究成果,探讨其岩石化学性质、形成时代、物质来源以及形成机制等。LA-ICP-MS锆石U-Pb定年结果显示其n(~(206)Pb)/n(~(238)U)加权平均年龄为153.4±1.1Ma,两颗继承锆石核n(~(207)Pb)/n(~(206)Pb)年龄分别为2449Ma和2498 Ma。岩石高硅、富碱、高钾钙碱性、准铝质到弱过铝质,富集轻稀土元素、部分大离子亲石元素(Rb、K等)和Th、U、Pb等元素,亏损部分高场强元素(Nb、Ta、Ti)和Ba、Sr、P等元素。该岩体zr+Nb+Ce+Y350×10~(-6),10000*Ga/Al2.6,显示出A型花岗岩的特征。全岩Sm-Nd同位素显示ε_(Nd)(t)=-6.94~-5.19,二阶段模式年龄T_(DM2)=1.37~1.51 Ga。锆石原位Hf同位素显示,锆石ε_(Hf)(t)=-9.35~-1.16,T_(DM2)=1.28~1.79 Ga。两颗继承锆石核ε_(Hf)(t)分别为-6.82和1.48。岩石化学和同位素特征表明岩石主要来源于元古代地壳变质杂岩的部分熔融,并可能有少量地幔物质的加入。燕山早期,由于俯冲的古太平洋板块后撤,研究区处于伸展的构造环境,岩石圈减薄,软流圈上涌,导致玄武质岩浆底侵,诱发上覆的古元古代下地壳部分熔融,形成花岗质岩浆,并沿着深大断裂带运移侵位,形成大义山南体(太坪山单元)黑云母二长花岗岩。  相似文献   

11.
海南岛古元宙变质基底性质和地壳增生的Nd、Pb同位素制约   总被引:15,自引:0,他引:15  
基于海南地壳各类型岩石的63个样品Nd和Pb同位素分析数据,研究了海南地块元古宙地壳变质基底的时代、特征和演化。研究结果表明,海南岛元古宙变质基底成熟度低,基底变质岩系的母岩物质来源于长期亏损的地幔源区,主要形成时代为古元古宙晚期-新元古宙;不同时代花岗岩具有较高的εNd(t)值和较低的Nd模式年龄,主要形成于幔源物质参与下的或含地幔成分较多的初生地壳再循环。地壳增生具幕式增生的特点,并在2.0Ga、1.7Ga、1.2Ga出现高峰;Pb同位素组成既不同于扬子地块又不同于华夏地块,介于两地块之间,和Nd同位素特征具有一致或耦合关系。结合海南岛地质特征,初步认为不能单纯地将海南岛基底理解为华南地块统一南延部分或是华夏古陆的部分,可能为不同的构造块体。  相似文献   

12.
《International Geology Review》2012,54(12):1492-1509
ABSTRACT

The Biarjmand granitoids and granitic gneisses in northeast Iran are part of the Torud–Biarjmand metamorphic complex, where previous zircon U–Pb geochronology show ages of ca. 554–530 Ma for orthogneissic rocks. Our new U–Pb zircon ages confirm a Cadomian age and show that the granitic gneiss is ~30 million years older (561.3 ± 4.7 Ma) than intruding granitoids (522.3 ± 4.2 Ma; 537.7 ± 4.7 Ma). Cadomian magmatism in Iran was part of an approximately 100-million-year-long episode of subduction-related arc and back-arc magmatism, which dominated the whole northern Gondwana margin, from Iberia to Turkey and Iran. Major REE and trace element data show that these granitoids have calc-alkaline signatures. Their zircon O (δ18O = 6.2–8.9‰) and Hf (–7.9 to +5.5; one point with εHf ~ –17.4) as well as bulk rock Nd isotopes (εNd(t) = –3 to –6.2) show that these magmas were generated via mixing of juvenile magmas with an older crust and/or melting of middle continental crust. Whole-rock Nd and zircon Hf model ages (1.3–1.6 Ga) suggest that this older continental crust was likely to have been Mesoproterozoic or even older. Our results, including variable zircon εHf(t) values, inheritance of old zircons and lack of evidence for juvenile Cadomian igneous rocks anywhere in Iran, suggest that the geotectonic setting during late Ediacaran and early Cambrian time was a continental magmatic arc rather than back-arc for the evolution of northeast Iran Cadomian igneous rocks.  相似文献   

13.
We report here new field and analytical data from Precambrian rocks on Hainan Island of the Cathaysia Block, south China, and examine its probable connection to Laurentia. Granitoids and newly discovered felsic volcanic rocks dated at 1433 ± 6 Ma and 1439 ± 9 Ma (SHRIMP U‐Pb zircon) on Hainan Island are coeval with, and isotopically similar to the 1500–1350 Ma trans‐continental granite‐rhyolite province in southern Laurentia. Quartzites unconformably overlying the ca. 1430 Ma volcaniclastic rocks on Hainan Island are interpreted as locally‐sourced Grenvillian foreland basin deposits that can be correlated with the Deer Trail Group of south‐western Laurentia. The detrital provenance of the quartzites contains age populations comparable to the 1610–1490 Ma, westerly‐sourced non‐Laurentian detrital grains reported in the Belt Basin of south‐western Laurentia. Our new data thus make Cathaysia the most likely continental block next to western Laurentia before and during the late Mesoproterozoic assembly of Rodinia.  相似文献   

14.
The Gaoligong belt is located in the southeastern margin of the Tibetan plateau, and is bound by the Tengchong and Baoshan blocks. This paper presents new data from zircon geochronology, geochemistry, and whole-rock Sr–Nd–Pb–Hf isotopes to evaluate the tectonic evolution of the Gaoligong belt. The major rock types analysed in the present study are granitic gneiss, granodiorite, and granite. They are metaluminous to peraluminous and belong to high-K, calc-alkaline series. Laser ablation inductively coupled plasma mass spectrometry (LA–ICP–MS) analyses of zircons from nine granitic rocks yielded crystallization ages of 495–487 Ma, 121 Ma, 89 Ma, and 70–63 Ma. The granitoids can be subdivided into the following four groups. (1) Early Paleozoic granitic gneisses with high εNd(t) and εHf(t) values of − 1.06 to − 3.45 and − 1.16 to 2.09, and model ages of 1.16 Ga to 1.33 Ga and 1.47 Ga to 1.63 Ga, respectively. Their variable 87Sr/86Sr and Pb values resemble the characteristics of the Early Paleozoic Pinghe granite in the Baoshan block. Our data suggest that the rocks were derived from the break-off of the Proto-Tethyan oceanic slab between the outboard continent and the Baoshan block, which induced the partial melting of Mesoproterozoic pelitic sources mixed with depleted mantle materials. (2) Early Cretaceous granodiorites with low εNd(t) and εHf(t) values of − 8.92 and − 4.91 with Nd and Hf model ages of 1.41 Ga and 1.49 Ga, respectively. These rocks have high initial 87Sr/86Sr (0.711992) and lower crustal Pb values, suggesting that they were derived from Mesoproterozoic amphibolites with tholeiitic signature, leaving behind granulite residue at the lower crust. (3) Early Late Cretaceous granites with low εNd(t) and εHf(t) values of − 9.58 and − 4.61 with Nd and Hf model ages of 1.43 Ga and 1.57 Ga, respectively. These rocks have high initial 87Sr/86Sr (0.713045) and lower crustal Pb isotopic values. These rocks were generated from the partial melting of Mesoproterozoic metapelitic sources resulting from the delamination of thickened lithosphere, following the closure of the Bangong–Nujiang Ocean and collision of the Lhasa–Qiangtang blocks. (4) Late Cretaceous to Paleogene granitic gneisses with low εNd(t) and εHf(t) values of − 4.41 to − 10 and − 5.95 to − 8.71, Nd model ages ranging from 1.08 Ga to 1.43 Ga, and Hf model ages from 1.53 Ga to 1.67 Ga, respectively. These rocks show high initial 87Sr/86Sr (0.713201 and 714662) and lower crustal Pb values. The data suggest that these rocks are likely related to the eastward subduction of the Neo-Tethyan Oceanic slab, which induced partial melting of Mesoproterozoic lower crustal metagreywacke. The results presented in this study from the Gaoligong belt offer important insights on the evolution of the Proto-Tethyan, Bangong–Nujiang, and Neo-Tethyan oceans in the southeastern margin of the Tibetan Plateau.  相似文献   

15.
通过钐—钕同位素测定,抱板群中的斜长角闪片岩、混合花岗片麻岩及其中的暗色包体等时线年龄分别为1.7Ga、1.4Ga和2.9Ga.用单矿物铅同位素测斜长角闪片岩、混合花岗片麻岩年龄分别为1.1~1.2Ga和940Ma.铷—锶全岩等时线法测得抱板群斜长角闪片岩和石碌群、抱板群中的云母片岩为1.3Ga和1.2Ga。因此,海南岛存在着前寒武纪地层,其中,具有花岗—绿岩且含有玄武质科马提岩组合的抱板群是前寒武纪结晶基底或前地槽构造层.石碌群是地槽早期发展阶段形成的构造亚层。海南岛大地构造演化经历了前地槽(X)、地槽(Ⅰ)、地台(Ⅱ)、地洼(Ⅲ)等多个发展阶段。  相似文献   

16.
ABSTRACT

Late Mesozoic granitoids in South China are generally considered to have been generated under the Palaeo–Pacific tectonic regime, however, the precise subduction mechanism remains controversial. Detailed zircon U–Pb geochronological, major and trace element, and Sr–Nd–Hf isotopic data are used to document the spatiotemporal distribution of the granitoids in Zhejiang Province. Three periods of late Mesozoic magmatism, including stage 1 (170–145 Ma), stage 2 (145–125 Ma), and stage 3 (125–90 Ma), can be distinguished based on systematic zircon U–Pb ages that become progressively younger towards the SE. Stage 1 granitic rocks are predominantly I-type granitoids, but minor S- or A-type rocks also occur. Sr–Nd–Hf isotopic data suggest that these granitoids were generated from hybrid magmas that resulted from mixing between depleted mantle-derived and ancient crust-derived magmas that formed in an active continental margin environment related to the low-angle subduction of the Palaeo–Pacific plate beneath Southeast China mainland. Stage 2 granitic rocks along the Jiangshan–Shaoxing Fault are predominantly I- and A-type granitoids with high initial 87Sr/86Sr, low εNd(t), εHf(t) values and Mesoproterozoic Nd–Hf model ages. These results suggest that stage 2 granitoids were derived from mixing between enriched mantle-derived mafic magmas and ancient crust-derived magmas in an extensional back-arc setting related to rollback of the Palaeo–Pacific slab. Stage 3 granitic rocks along the Lishui–Yuyao Fault comprise mainly A- and I-type granitoids with high initial 87Sr/86Sr ratios, and low εNd(t) and εHf(t) values, again suggesting mixing of enriched mantle-derived mafic magmas with more ancient crustal magmas in an extensional back-arc setting, related in this case to the continued rollback the Palaeo–Pacific plate and the outboard retreat of its subduction zone.  相似文献   

17.
新的区域地质调查在海南岛东北部木栏头地区识别出一套从前未知的中级变质杂岩。木栏头变质杂岩主要沿林新—木栏头—虎威岭—赤坡—七星岭—新埠海—铺前海边沿岸呈基岩或不同尺度的无根岩块断续出露,其主体是钙硅酸盐岩和正、副片麻岩,含有少量斜长角闪岩、石英岩和大理岩,并按分布区域可进一步区分出林新片麻岩- 斜长角闪岩组合、木栏头变质火山岩- 钙硅酸盐岩组合、虎威岭- 七星岭片麻岩- 钙硅酸盐岩- 大理岩组合和新埠海- 铺前片麻岩组合等四套岩石组合。对30件变质基性岩、变质中酸性岩、变质碎屑沉积岩、钙硅酸盐岩以及花岗和伟晶岩脉等不同类型岩石的锆石U- Pb定年结果表明,木栏头变质杂岩的原岩主体是一套二叠纪火山- 沉积岩系,其内含有少量二叠纪花岗质侵入岩以及前寒武纪结晶基底的残留。前寒武纪结晶基底主要包括古元古代晚期(1670 Ma)碎屑沉积岩和中元古代早期(1460~1410 Ma)花岗质片麻岩,晚二叠世碱性花岗岩中还存在大量单一的中元古代晚期(1180 Ma)继承锆石。变质沉积岩中的早期碎屑锆石年龄峰值为2550~2490 Ma、1850~1780 Ma、1600~1560 Ma、1450 Ma和1100 Ma,表明其物源主要来自于海南岛中部的抱板群、石碌群和石灰顶组。二叠纪花岗岩的侵入时代主要为280 Ma和260 Ma,与陆缘弧前盆地环境下形成的火山- 沉积岩系的时代基本一致。这些沉积岩中的碎屑锆石除具有395~345 Ma和280~256 Ma两个年龄峰值外,部分样品还含有960~930 Ma和450~410 Ma两个重要年龄峰值,与前人在海南岛晚古生代地层中获得的年代学结果相似。木栏头变质杂岩经历了晚二叠世—中三叠世(254~235 Ma)高角闪岩相区域变质和深熔作用以及花岗和伟晶岩脉的大规模侵入,独居石U- Pb定年表明中侏罗世(159 Ma)花岗岩脉也侵入其中。结合近年发表的研究资料,我们认为海南岛应属于印支陆块的一部分,由中元古代结晶基底和早古生代盖层构成的琼南地体以及该地体演化而来的琼北构造混杂岩带两个次级构造单元组成,邦溪- 晨星构造带或昌江- 琼海断裂不能被视为华南和印支陆块间的构造边界,真正的古特提斯缝合带(即金沙江- 哀牢山- 马江缝合带的东延)应位于木栏头北部,大致相当于现今琼州海峡断裂的位置。华南和印支陆块间古特提斯洋盆的关闭始于石炭纪(340~300 Ma)洋壳的南向俯冲,形成北部的潮滩鼻榴辉岩和南部的邦溪- 晨星弧后盆地,二叠纪时期(280~255 Ma)洋盆持续俯冲形成海南岛主体大陆岛弧以及木栏头弧前盆地,而后洋盆最终关闭并进入到陆- 陆碰撞和碰撞后伸展阶段,从而形成木栏头变质杂岩以及海南岛内部其他三叠纪变质岩和同期花岗质岩石。  相似文献   

18.
对海南岛北西部戈枕地区侵位于古中元古代抱板群花岗质岩进行了CL成像制约下的SHRIMP锆石U-Pb年龄测定,获得了1455±12Ma的U-Pb谐和年龄、1454±12Ma有利的207Pb/206Pb中值年龄。结合该花岗质岩锆石内部结构、岩浆源区和变形变质特征,以及前人多种定年成果,认为该花岗质岩结晶年龄应为~1450Ma,随后于~1400Ma经历了一次构造-热变质事件;Rodinia超大陆聚合前,华夏地块(包括海南岛、或至少是海南岛北西部)最可能位于劳伦大陆南缘的西南延伸部分。研究结果还暗示华夏地块(包括海南岛)所经历的格林威尔造山事件可能较扬子地块偏早,古、中元古代抱板群沉积上限应约束在~1450Ma。  相似文献   

19.
Abstract

Palaeozoic granitoids in the Chinese Altai are important for understanding the evolution of the Central Asian Orogenic Belt (CAOB). The Xiaodonggou granitic intrusion, situated in the Chinese Altai (southern CAOB), is composed of two intrusive phases, medium-grained granite intruded by porphyritic granite. Zircon LA-ICP-MS U–Pb analyses of medium-grained granite and porphyritic granite yield ages of 409 ± 2 Ma and 400 ± 1 Ma, respectively, indicating that these formed in Early Devonian time. Medium-grained granite and porphyritic granite have similar geochemical features and Nd–Hf isotopic compositions. Arc-like geochemical characteristics (e.g. enrichment of LILEs and negative anomalies of Nb, Ta, Ti, and P) show that both phases are volcanic arc granites (VAGs). Geochemical and isotopic characteristics suggest that these magmas originated from melting older crust. Based on their near-zero or negative εNd(t) values (?1.4to 0) and positive εHf(t) values (+1.4 to +7.8), together with Nd model ages of 1.15–1.26 Ga and zircon Hf model ages of 0.90–1.30 Ga, we suggest that the Xiaodonggou granites were derived from a mixture of juvenile and old crustal components. Some other Devonian granitic intrusions were recently identi?ed in the Chinese Altai with ages between 416 and 375 Ma. These Devonian granites have similar geochemical characteristics and petrogenesis as Xiaodonggou granites. The formation of these Devonian granites was in response to subduction processes, suggesting that Chinese Altai was an active continental margin in Early Devonian time.  相似文献   

20.
赵燕  第五春荣  孙勇  朱涛  王洪亮 《岩石学报》2013,29(5):1698-1712
敦煌杂岩位于塔里木克拉通的东部,探寻和研究其中的早前寒武纪地质体对于探讨敦煌地块早前寒武纪地壳的形成和演化及其构造归属等问题具有重要的意义.甘肃敦煌水峡口地区的敦煌杂岩主要由英云闪长质片麻岩、花岗闪长质片麻岩以及表壳岩石组成.利用LA-ICP-MS锆石U-Pb定年方法测得水峡口英云闪长片麻岩和花岗片麻岩原岩的形成年龄分别为2561±16Ma和2510±22Ma,确证了在敦煌杂岩中存在太古宙岩石.此外,还获得斜长角闪岩的变质年龄为1806±14Ma,推测其原岩岩浆可能来自古老岩石圈地幔的部分熔融.根据已有的资料提出在古元古代晚期(1.80 ~ 1.85Ga)敦煌杂岩经历了一期较广泛的变质作用.锆石Hf同位素显示~2.5Ga的岩石年龄在敦煌地块代表新太古代晚期重要地壳生长时期,而~1.8Ga的构造-热事件则是以古老地壳物质循环再造为主.这些资料显示敦煌地块和华北克拉通在早前寒武纪经历了类似的地壳形成和演化过程,且共同记录了全球性的Columbia碰撞造山事件信息.  相似文献   

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